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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Pregnane X receptor regulates the AhR/Cyp1A1 pathway and protects liver cells from benzo-[alpha]-pyrene-induced DNA damage
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Pregnane X receptor regulates the AhR/Cyp1A1 pathway and protects liver cells from benzo-[alpha]-pyrene-induced DNA damage

机译:妊娠X受体调节AHR / CYP1A1途径,保护肝细胞免受苯并α-芘诱导的DNA损伤

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Pregnane X receptor (PXR) plays an important role in protecting cells from mutagenic DNA damages induced by endogenous and exogenous toxicants. This protective function is often attributed to the PXR-regulated metabolic detoxification. Here we report a novel potential mechanism that PXR reduces benzo[alpha]-pyrene(BaP)-induced DNA damage through inhibiting the transcriptional activity of aryl hydrocarbon receptor (AhR) which plays a pivotal role in the bioactivation of BaP. We have utilized three well-characterized cell lines, i.e. Hepal cl c7, AhR +/+; Bpr lacks AhR obligatory partner ARNT; Tao, lacks AhR, to analyze pivotal role of AhR/ARNT complex in mediating the BaP-induced DNA damages using comet assay (single-cell gel electrophoresis). We found that PXR activation could significantly inhibit BaP-induced DNA damage in the HepG2 cells as well as mouse hepatocytes. Using PXR-null and wild type mouse hepatocytes we showed that PXR activation by pregnenolone 16acarbonitrile (PCN) significantly inhibited BaP-induced DNA damage and this protective effect was abolished in PXR-null hepatocytes. Mechanistically, PXR activation inhibited expression of AhR-target genes for CYP1A1, CYP1B1 and CYP1A2 that are required for BaP biotransformation in cultured liver cells, or in the livers of C57BL/6J mice. Using an AhR-responsive reporter assay as well as chromatin immunoprecipitation assay we found that PXR activation transcriptionally represses AhR-regulated gene expression. Furthermore, we found that PXR directly bound AhR at its DNA-binding domain, and this association may play a role in preventing of the AhR from binding to its target genes as shown in the ChIP assay. Taken together, our study has revealed a novel mechanism by which PXR protects liver cells from BaP-induced DNA damage through inhibiting the BaP biotransformation.
机译:妊娠X受体(PXR)在保护内源性和外源麻醉剂诱导的诱导诱导的细胞中起着重要作用。该保护功能通常归因于PXR调节的代谢解毒。在这里,我们通过抑制在BAP的生物活化中起作用的芳基烃受体(AHR)的转录活性,PXR减少了PXR减少了苯并α-戊烯(BAP)诱导的DNA损伤。我们使用了三种特征的细胞系,即HePal Cl C7,AHR + / +; BPR缺乏AHR强制伙伴ARNT;陶,缺乏AHR,分析AHR / ARNT复合物在使用COMET测定(单细胞凝胶电泳)中介导BAP诱导的DNA损伤中的枢转作用。我们发现PXR活化可以显着抑制HepG2细胞中的BAP诱导的DNA损伤以及小鼠肝细胞。使用PXR-NULL和野生型小鼠肝细胞,我们表明PXR活化通过孕烯醇酮16羰基腈(PCN)显着抑制BAP诱导的DNA损伤,并且在PXR-NULL肝细胞中废除了这种保护作用。机械地,PXR活化抑制了CYP1A1,CYP1B1和CYP1A2的AHR靶基因的表达,所述CYP1A1,CYP1B1和CYP1A2所需的培养肝细胞中的BAP生物转化所需的CYP1A2,或在C57BL / 6J小鼠的肝脏中。使用AHR响应的报告器测定以及染色质免疫沉淀测定试验,发现PXR活化转录抑制AHR调节的基因表达。此外,我们发现PXR在其DNA结合结构域中直接结合AHR,并且该关联可能在防止AHR与其靶基因中的结合时起作用,如芯片测定中所示。我们的研究揭示了一种新的机制,PXR通过抑制BAP生物转化来保护肝细胞免受BAP诱导的DNA损伤。

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